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Part 23 급 수소연료전지 커뮤터기의 나셀의 스팬 방향 배치에 따른 공력 영향성 분석EFFECTS OF NACELLE SPANWISE POSITION ON AERODYNAMIC PERFORMANCE OF A PART23 HYDROGEN FUEL CELL COMMUTER AIRCRAFT

Other Titles
EFFECTS OF NACELLE SPANWISE POSITION ON AERODYNAMIC PERFORMANCE OF A PART23 HYDROGEN FUEL CELL COMMUTER AIRCRAFT
Authors
나바니타 브라마차리김건오승환명노신
Issue Date
Dec-2025
Publisher
한국전산유체공학회
Keywords
Aerodynamic efficiency; Spanwise nacelle position; Hydrogen fuel cell aircraft; Computational fluid dynamics; 공력 효율성; 스팬 방향 나셀 위치; 수소연료전지 항공기; 전산유체역학
Citation
한국전산유체공학회지, v.30, no.4, pp 70 - 91
Pages
22
Indexed
KCI
Journal Title
한국전산유체공학회지
Volume
30
Number
4
Start Page
70
End Page
91
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/81734
ISSN
1598-6071
Abstract
The implementation of multi-engine propulsion in next-generation hydrogen fuel cell aircraft introduces new challenges in aerodynamic integration, particularly concerning nacelle placement along the wing span. This study investigates the aerodynamic impact of varying nacelle spanwise positions through a comparative computational analysis. Five under-wing nacelle configurations were evaluated using Reynolds-Averaged Navier- Stokes (RANS) simulations, incorporating the Spalart-Allmaras turbulence model. Simulations were performed at a representative cruise condition with a freestream velocity of 110 m/s. Key aerodynamic parameters, lift coefficient, drag coefficient, and lift-to-drag ratio were assessed. The results reveal that nacelle positioning significantly influences aerodynamic performance, with overly inboard clustering degrading lift and wake structure, while moderately inboard or outboard placements offer improved flow symmetry and a lift-to-drag ratio ranging from 8.01 to 12.54, depending on nacelle placement. These findings provide valuable insights for early-stage design optimization in hydrogen aircraft propulsion systems, where aerodynamic efficiency must be balanced with structural and propulsion integration constraints.
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